Market Forecast By Material Types (Living Cells, Hydrogels, Extracellular Matrices and Others), By Technologies (Micro Extrusion Bioprinting, Magnetic Levitation, Inkjet-Based, Syringe-Based, Laser-Based and Others), By Components (3D Bioprinters, Biomaterials and Scaffolds), By Applications ((Research Application (3D Cell Culture, Regenerative Medicine, Drug Testing and Others), Clinical Application (Dental, Orthopedic, Skin Substitutes and Grafts and Vascular Tissues and Organs)), By End Users (Pharmaceutical & Biotechnology Companies, Research Organizations & Academic Institutes and Others), By Countries (India, China, Japan, Australia and Rest of APAC) and Competitive Landscape
Product Code: ETC000714 | Publication Date: Jul 2024 | Product Type: Report | |
Publisher: 6Wresearch | No. of Pages: 200 | No. of Figures: 90 | No. of Tables: 30 |
The Asia Pacific (APAC) 3D Bioprinting Market Report thoroughly covers the market by Material Types, Technologies, Components, Applications, End Users and Countries. The market report provides an unbiased and detailed analysis of the ongoing market trends, opportunities/high growth areas, and market drivers which would help the stakeholders to devise and align their market strategies according to the current and future market dynamics.
Asia Pacific APAC 3D bioprinting market is expected to grow significantly between 2024 and 2030. This can be due to the rising frequency of chronic diseases, increased desire for individualized therapy, and an aging population in nations such as Japan, China, and South Korea.
According to 6Wresearch, the Asia Pacific (APAC) 3D Bioprinting Market size is expected to grow during the forecast period 2024-2030. The increasing prevalence of chronic diseases is one of the primary reasons for the growth of the APAC 3D bioprinting market. With an increase in lifestyle-related ailments such as diabetes, cancer, and cardiovascular disorders in the Asia Pacific area, there is a greater need for innovative medical treatments such as 3D bioprinting. Increasing desire for individualized medicine. The notion of customized medicine, in which therapy is tailored to individual patients based on their genetic composition, has gained popularity in APAC. This has resulted in a rise in demand for 3D bioprinted tissues and organs that may be tailored to the specific needs of each patient. Increasing geriatric population. The ageing population in nations such as Japan and South Korea is predicted to drive up demand for 3D bioprinting technology. Because older people are more likely to have chronic illnesses and require personalised therapies, the application of 3D bioprinting is expected to expand in this age group.
While there are several potential prospects, the APAC 3D bioprinting market confronts the following challenges. The initial investment and recurring costs for 3D bioprinting technology can be substantial, making it unavailable to many smaller healthcare facilities throughout the Asia Pacific. Regulatory hurdles: The regulatory environment for medical equipment and products varies throughout APAC countries, making it difficult for enterprises trying to enter the market with their 3D bioprinting products. The APAC 3D bioprinting industry is predicted to expand and develop significantly between 2024 and 2030. Technological advancements, increased cooperation between research institutes and industry players, and government backing for healthcare innovations are projected to drive the market throughout this time period.
Organovo Holdings Inc., Aspect Biosystems Ltd., Regenovo Biotechnology Co. Ltd., 3Dynamic Systems Ltd., and Cyfuse Biomedical K.K. are among the prominent players in the APAC 3D bioprinting market. These companies are always investing in R&D to improve their products and increase their footprint in the Asia Pacific area.
The manufacturing and usage of 3D bioprinted products in Asia Pacific is governed by regulations enacted by various government agencies. These rules seek to ensure the safety and efficacy of these items, as well as to provide guidelines for their manufacture and use. In Japan and Australia, 3D bioprinted tissues must go through a license process supervised by the Pharmaceuticals and Medical Devices Agency (PMDA) and the Therapeutic Goods Administration (TGA), respectively. This regulatory control helps to reassure patients and healthcare professionals that only safe and proven items are utilized in medical procedures. As the region's demand for 3D bioprinted products grows, government regulations are expected to play an increasingly important role in assuring their safety and quality. The overall market growth and advancement prospects for APAC 3D bioprinting are very promising.
The future prospects for the APAC 3D bioprinting market appear positive, with the possibility of more technological developments and increased demand for personalized medicine. 3D bioprinting is predicted to transform the healthcare industry in this region, addressing complicated medical diseases and increasing patient outcomes. As more firms enter the market and engage with researchers, we may expect tremendous growth and advancements in APAC's 3D bioprinting sector.
Overall, the APAC 3D bioprinting market provides a profitable opportunity for investors, manufacturers, and researchers. With rising demand for innovative medical solutions and government support for healthcare breakthroughs, the Asia-Pacific region is positioned to become a significant participant in 3D bioprinting. To fully realize the promise of this technology in APAC, businesses and research institutes must stay up to date on the latest advances and work toward advancements.
According to Dhaval, Research Manager, 6Wresearch, the living cells segment is predicted to experience the most development in the APAC 3D bioprinting market. This is due to the growing utilization of living cells in tissue and organ printing, as well as improvements in cell culture techniques.
Syringe-based 3D bioprinting technology is predicted to increase significantly in the APAC area. This technology uses a syringe to deposit bioinks (cell and biomaterial mixtures) layer by layer, resulting in tissue-like structures. Its capacity to print complex and large-scale tissues makes it an attractive option for medical applications like organ donation.
The 3D bioprinters segment is predicted to expand the most in the APAC region. This might be attributable to rising demand for innovative and efficient bioprinting technology, as well as ongoing R&D efforts to improve these machines.
The clinical application segment is predicted to increase significantly in the APAC 3D bioprinting market. This comprises dental, orthopedic, skin substitutes and grafts, as well as vascular tissues and organs.
The pharmaceutical and biotechnology companies category is likely to have considerable expansion in the APAC 3D bioprinting market. This can be linked to the growing demand for new technologies and creative products in the medical industry, as well as collaborations with research organizations and academic institutions.
China is likely to see considerable growth in the APAC 3D bioprinting market. This can be ascribed to the country's enormous population, rising healthcare spending, and government attempts to encourage research and development in this field.
The Asia Pacific 3D Bioprinting Market report provides a detailed analysis of the following market segments:
1 Executive Summary |
2 Introduction |
2.1 Report Description |
2.2 Key Highlights of The Report |
2.3 Market Scope & Segmentation |
2.4 Research Methodology |
2.5 Assumptions |
3 APAC 3D Bioprinting Market Overview |
3.1 APAC 3D Bioprinting Market Revenues, 2020 & 2030 |
3.2 APAC 3D Bioprinting Market Revenue Share, By Material Type, 2020 & 2030 |
3.3 APAC 3D Bioprinting Market Revenue Share, By Technology, 2020 & 2030 |
3.4 APAC 3D Bioprinting Market Revenue Share, By Component, 2020 & 2030 |
3.5 APAC 3D Bioprinting Market Revenue Share, By Application, 2020 & 2030 |
3.6 APAC 3D Bioprinting Market Revenue Share, By End User, 2020 & 2030 |
3.7 APAC 3D Bioprinting Market Revenue Share, By Regions, 2020 & 2030 |
3.8 APAC 3D Bioprinting Market Industry Life Cycle |
3.9 APAC 3D Bioprinting Market- Porter’s Five Forces, 2023 |
4 APAC 3D Bioprinting Market Dynamics |
4.1 Impact Analysis |
4.2 Market Drivers |
4.3 Market Restraints |
5 APAC 3D Bioprinting Market Trends |
6 APAC 3D Bioprinting Market Overview, By Material Types |
6.1 APAC 3D Bioprinting Market Revenues, By Living Cells, 2020 & 2030 |
6.2 APAC 3D Bioprinting Market Revenues, By Hydrogels, 2020 & 2030 |
6.3 APAC 3D Bioprinting Market Revenues, By Extracellular Matrices, 2020 & 2030 |
6.4 APAC 3D Bioprinting Market Revenues, By Others, 2020 & 2030 |
7 APAC 3D Bioprinting Market Overview, By Technologies |
7.1 APAC 3D Bioprinting Market Revenues, By Micro Extrusion Bioprinting, 2020 & 2030 |
7.2 APAC 3D Bioprinting Market Revenues, By Magnetic Levitation, 2020 & 2030 |
7.3 APAC 3D Bioprinting Market Revenues, By Inkjet-based, 2020 & 2030 |
7.4 APAC 3D Bioprinting Market Revenues, By Syringe-based, 2020 & 2030 |
7.5 APAC 3D Bioprinting Market Revenues, By Laser-based, 2020 & 2030 |
7.6 APAC 3D Bioprinting Market Revenues, By Others, 2020 & 2030 |
8 APAC 3D Bioprinting Market Overview, By Components |
8.1 APAC 3D Bioprinting Market Revenues, By 3D Bioprinters, 2020 & 2030 |
8.2 APAC 3D Bioprinting Market Revenues, By Biomaterials, 2020 & 2030 |
8.3 APAC 3D Bioprinting Market Revenues, By Scaffolds, 2020 & 2030 |
9 APAC 3D Bioprinting Market Overview, By Applications |
9.1 APAC 3D Bioprinting Market Revenues, By Research Application, 2020 & 2030 |
9.1.1 APAC 3D Bioprinting Market Revenues, By 3D Cell Culture, 2020 & 2030 |
9.1.2 APAC 3D Bioprinting Market Revenues, By Regenerative Medicine, 2020 & 2030 |
9.1.3 APAC 3D Bioprinting Market Revenues, By Drug Testing, 2020 & 2030 |
9.1.4 APAC 3D Bioprinting Market Revenues, By Others, 2020 & 2030 |
9.2 APAC 3D Bioprinting Market Revenues, By Clinical Application, 2020 & 2030 |
9.2.1 APAC 3D Bioprinting Market Revenues, By Dental, 2020 & 2030 |
9.2.2 APAC 3D Bioprinting Market Revenues, By Orthopedic, 2020 & 2030 |
9.2.3 APAC 3D Bioprinting Market Revenues, By Skin Substitutes and Grafts, 2020 & 2030 |
9.2.4 APAC 3D Bioprinting Market Revenues, By Vascular Tissues and Organs, 2020 & 2030 |
10 APAC 3D Bioprinting Market Overview, By End Users |
10.1 APAC 3D Bioprinting Market Revenues, By Pharmaceutical & Biotechnology Companies, 2020 & 2030 |
10.2 APAC 3D Bioprinting Market Revenues, By Research Organizations & Academic Institutes, 2020 & 2030 |
10.3 APAC 3D Bioprinting Market Revenues, By Others, 2020 & 2030 |
11 India 3D Bioprinting Market Overview |
11.1 India 3D Bioprinting Market Revenues, 2020 & 2030 |
11.2 India 3D Bioprinting Market Revenues, By Material Type, 2020 & 2030 |
11.3 India 3D Bioprinting Market Revenues, By Technology, 2020 & 2030 |
11.4 India 3D Bioprinting Market Revenues, By Component, 2020 & 2030 |
11.5 India 3D Bioprinting Market Revenues, By Application, 2020 & 2030 |
11.6 India 3D Bioprinting Market Revenues, By End User, 2020 & 2030 |
12 Japan 3D Bioprinting Market Overview |
12.1 Japan 3D Bioprinting Market Revenues, 2020 & 2030 |
12.2 Japan 3D Bioprinting Market Revenues, By Material Type, 2020 & 2030 |
12.3 Japan 3D Bioprinting Market Revenues, By Technology, 2020 & 2030 |
12.4 Japan 3D Bioprinting Market Revenues, By Component, 2020 & 2030 |
12.5 Japan 3D Bioprinting Market Revenues, By Application, 2020 & 2030 |
12.6 Japan 3D Bioprinting Market Revenues, By End User, 2020 & 2030 |
13 China 3D Bioprinting Market Overview |
13.1 China 3D Bioprinting Market Revenues, 2020 & 2030 |
13.2 China 3D Bioprinting Market Revenues, By Material Type, 2020 & 2030 |
13.3 China 3D Bioprinting Market Revenues, By Technology, 2020 & 2030 |
13.4 China 3D Bioprinting Market Revenues, By Component, 2020 & 2030 |
13.5 China 3D Bioprinting Market Revenues, By Application, 2020 & 2030 |
13.6 China 3D Bioprinting Market Revenues, By End User, 2020 & 2030 |
14 Australia 3D Bioprinting Market Overview |
14.1 Australia 3D Bioprinting Market Revenues, 2020 & 2030 |
14.2 Australia 3D Bioprinting Market Revenues, By Material Type, 2020 & 2030 |
14.3 Australia 3D Bioprinting Market Revenues, By Technology, 2020 & 2030 |
14.4 Australia 3D Bioprinting Market Revenues, By Component, 2020 & 2030 |
14.5 Australia 3D Bioprinting Market Revenues, By Application, 2020 & 2030 |
14.6 Australia 3D Bioprinting Market Revenues, By End User, 2020 & 2030 |
15 Rest of APAC 3D Bioprinting Market Overview |
15.1 Rest of APAC 3D Bioprinting Market Revenues, 2020 & 2030 |
16 APAC 3D Bioprinting Market Opportunity Assessment |
16.1 APAC 3D Bioprinting Market Opportunity Assessment, By Material Type, 2025F |
16.2 APAC 3D Bioprinting Market Opportunity Assessment, By Technology, 2025F |
16.3 APAC 3D Bioprinting Market Opportunity Assessment, By Component, 2025F |
16.4 APAC 3D Bioprinting Market Opportunity Assessment, By Application, 2025F |
16.5 APAC 3D Bioprinting Market Opportunity Assessment, By End User, 2025F |
17 APAC 3D Bioprinting Market Competitive Landscape |
17.1 APAC 3D Bioprinting Market Revenue Share, By Companies, 2023 |
17.1.1 India 3D Bioprinting Market Revenue Share, By Companies, 2023 |
17.1.2 Japan 3D Bioprinting Market Revenue Share, By Companies, 2023 |
17.1.3 China 3D Bioprinting Market Revenue Share, By Companies, 2023 |
17.1.4 Australia 3D Bioprinting Market Revenue Share, By Companies, 2023 |
18 Company Profiles |
19 Strategic Recommendations |
20 Disclaimer |
Market Forecast By Material Types (Living Cells, Hydrogels, Extracellular Matrices and Others), By Technologies (Micro Extrusion Bioprinting, Magnetic Levitation, Inkjet-Based, Syringe-Based, Laser-Based and Others), By Components (3D Bioprinters, Biomaterials and Scaffolds), By Applications ((Research Application (3D Cell Culture, Regenerative Medicine, Drug Testing and Others), Clinical Application (Dental, Orthopedic, Skin Substitutes and Grafts and Vascular Tissues and Organs)), By End Users (Pharmaceutical & Biotechnology Companies, Research Organizations & Academic Institutes and Others), By Countries (India, China, Japan, Australia and Rest of APAC) and Competitive Landscape
Product Code: ETC000714 | Publication Date: Aug 2019 | Product Type: Report | |
Publisher: 6Wresearch | No. of Pages: 200 | No. of Figures: 90 | No. of Tables: 30 |
Growth in stem cell research activity along with increasing demand for organ transplant against inadequate supply of organs are anticipated to propel the demand for 3D bioprinting market in APAC region over the coming years. However, the unavailability of skilled professionals to operate the enhanced version of 3D bioprinters can hinder the growth of the market.
According to 6Wresearch, Asia Pacific (APAC) 3D bioprinting market size is anticipated to register growth during 2019-25. Japan and China are the leading revenue generating countries in APAC 3D Bioprinting Market. Moreover, increasing geriatric population coupled with rising number of chronic diseases and shortage of adequate organ donors would further drive the 3D bioprinting market during the forecast period.
By material types, the market can be categorized into living cells, hydrogels, extracellular matrices and others. Living cells segment is expected to capture majority of the market revenue share owing to their compatibility to restore damaged microstructures along with the ability to mend damaged tissues. However, hydrogels segment is expected to register significant growth over the next six years due to its compatibility with synthetic and natural materials.
The Asia Pacific 3D bioprinting market report thoroughly covers the market by material types, technologies, components, applications, end users, and key countries. The Asia Pacific 3D bioprinting market outlook report provides an unbiased and detailed analysis of the on-going Asia Pacific 3D bioprinting market trends, opportunities/high growth areas and market drivers which would help the stakeholders to devise and align their market strategies according to the current and future market dynamics.
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Key Highlights of the Report:
• Asia Pacific 3D Bioprinting Market Overview
• Asia Pacific 3D Bioprinting Market Outlook
• Asia Pacific 3D Bioprinting Market Forecast
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues for the Period 2015-2018
• Asia Pacific 3D Bioprinting Market Size and Asia Pacific 3D Bioprinting Market Forecast of Revenues, Until 2025
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues, By Material Type, for the Period 2015-2018
• Market Size & Forecast of Asia Pacific 3D Bioprinting Market Revenues, By Material Type, Until 2025
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues, By Technology, for the Period 2015-2018
• Market Size & Forecast of Asia Pacific 3D Bioprinting Market Revenues, By Technology, Until 2025
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues, By Component, for the Period 2015-2018
• Market Size & Forecast of Asia Pacific 3D Bioprinting Market Revenues, By Component, Until 2025
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues, By Applications, for the Period 2015-2018
• Market Size & Forecast of Asia Pacific 3D Bioprinting Market Revenues, By Applications, Until 2025
• Historical Data of Asia Pacific 3D Bioprinting Market Revenues, By End User, for the Period 2015-2018
• Market Size & Forecast of Asia Pacific 3D Bioprinting Market Revenues, By End User, Until 2025
• Historical Data of India 3D Bioprinting Market Revenues, for the Period 2015-2018
• Market Size & Forecast of India 3D Bioprinting Market Revenues, Until 2025
• Historical Data of China 3D Bioprinting Market Revenues, for the Period 2015-2018
• Market Size & Forecast of China 3D Bioprinting Market Revenues, Until 2025
• Historical Data of Japan 3D Bioprinting Market Revenues, for the Period 2015-2018
• Market Size & Forecast of Japan 3D Bioprinting Market Revenues, Until 2025
• Historical Data of Australia 3D Bioprinting Market Revenues, for the Period 2015-2018
• Market Size & Forecast of Australia 3D Bioprinting Market Revenues, Until 2025
• Market Drivers and Restraints
• Asia Pacific 3D Bioprinting Market Price Trends
• Asia Pacific 3D Bioprinting Market Trends and Industry Life Cycle
• Porter’s Five Force Analysis
• Market Opportunity Assessment
• Asia Pacific 3D Bioprinting Market Share, By Material Type, By Players
• Asia Pacific 3D Bioprinting Market Overview on Competitive Benchmarking
• Company Profiles
• Key Strategic Recommendations
Markets Covered
The Asia Pacific 3D Bioprinting Market report provides a detailed analysis of the following market segments:
• By Material Types:
o Living Cells
o Hydrogels
o Extracellular Matrices
o Others
• By Technologies:
o Micro Extrusion Bioprinting
o Magnetic Levitation
o Inkjet-Based
o Syringe-Based
o Laser-Based
o Others
• By Components:
o 3D Bioprinters
o Biomaterials
o Scaffolds
• By Applications:
o Research Application
? 3D Cell Culture
? Regenerative Medicine
? Drug Testing
? Others
o Clinical Application
? Dental
? Orthopedic
? Skin Substitutes and Grafts
? Vascular Tissues and Organs
• By End Users:
o Pharmaceutical & Biotechnology Companies
o Research Organizations & Academic Institutes
o Others
• By Countries:
o India
o China
o Japan
o Australia
o Rest of APAC
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